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Study on dynamic sorption characteristics of modified biochars for ammonium in biogas slurry

机译:沼气浆中铵改性生物脉动动态吸附特性研究

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The objective of this study was to investigate the relationship between ammonium (NH4 -N) dynamic sorption capacity and physicochemical properties of modified biochars. Biochars, producing from three species of agricultural wastes of cornstalk (A), corncob (B) and sawdust (C) at 550°C, 600°C and 650°C, were modified by four methods of NaOH plus microwave (NaM), KOH (K), FeCl3 (Fe) and HNO3 (H). The static and dynamic adsorption experiments were conducted to investigate sorption characteristics of modified biochars on NH4 -N in slurry of piggery manure anaerobic digestate. Four modified biochars with better NH4 -N adsorption rates were selected through static kinetics adsorption tests, which showed that chemical reactions might have occurred during the NH4 -N sorption process and the maximum NH4 -N removal rates of B-550-Fe, A-550-NaM, A-550-K and C-600-NaM were 66.64%, 57.50%, 52.39% and 45.20%, respectively. The dynamic adsorption column experiment was conducted in a three-stage adsorption column packed with the selected three modified biochars. NH4 -N dynamic adsorption depended on the slurry inflow flow rate, the type of biochar and the depth of packed biochar. The optimal adsorption process was elected by the method of orthogonal experiment. The data showed that using deeper packed biochar and applying lower flow rates could be a better strategy to increase NH4 -N adsorption. The maximum NH4 -N removal rate in the slurry could reach 85.60% in the three-stage adsorption process. It concluded that NH4 -N adsorption in three-stage adsorption process could be an effective method to recover nitrogen from piggery manure anaerobic digestate.
机译:本研究的目的是探讨修饰生物班的铵(NH4-N)动态吸附能力与物理化学性质之间的关系。从550℃,600℃和650℃下,通过四种NaOH Plus微波(NAM)来修饰从三种农业废物(A),玉米浦(B),玉米杆(B)和锯末(C)的农业废物的生产中产生的生物脉, KOH(k),FECL3(Fe)和HNO3(H)。进行了静态和动态吸附实验,以研究猪肉粪酸脂肪植物中NH4-恩对改良生物脉的吸附特性。通过静态动力学吸附试验选择具有更好NH4-N-N-N-N吸附率的修饰生物谱,这表明在NH4 -N吸附过程中可能发生化学反应和B-550-Fe的最大NH 4 -N拆除率,a- 550-NAM,A-550-K和C-600-NAM分别为66.64%,57.50%,52.39%和45.20%。动态吸附柱实验在用所选三种改性生物脉中填充的三级吸附柱中进行。 NH4 -N动态吸附取决于浆料流入流量,生物炭类型和填充生物炭的深度。通过正交实验方法选择最佳吸附过程。数据显示,使用更深的填充生物炭和施加较低的流速可能是更好的策略来增加NH4 -N吸附。浆料中的最大NH4 -N去除率在三级吸附过程中可以达到85.60%。结论是,三阶段吸附过程中的NH 4 -N吸附可能是从填充肥料厌氧消化中回收氮的有效方法。

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